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Intercropping Winter Greens between Blackberry Rows for Year-round High Tunnel Production

机译:Blackberry行之间的间作冬季蔬菜全年高隧道生产

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A decrease in available farmland worldwide has prompted interest in polyculture systems such as intercropping where two or more crops are grown simultaneously on the same land to increase the yield per farm area. In Alcalde, NM, a year-round intercropping system was designed to evaluate organically produced blackberry cultivars (Rubus, subgenus Rubus) and winter greens in a high tunnel over a 2-year period. Two floricane fruiting blackberry cultivars, Chester Thornless and Triple Crown, were grown intercropped with 'Red Russian' kale (Brassica napes) and 'Bloomsdale' spinach (Spinacia oleracea) in a high tunnel. In an adjacent field, the planting of blackberry was repeated with no winter intercrop and no high tunnel. Both cultivars of blackberry were harvested July to September, and fresh weights were measured to determine suitability to the intercropping system in the high tunnel. Both species of winter greens were harvested January to April, and fresh yield weights were measured to discern fitness as possible intercrops in this system. Row covers were used for kale and spinach, and air temperatures were monitored November to April inside the high tunnel. High tunnel temperatures were within acceptable ranges for the production of greens with the use of rowcovers. Yield data from this study indicates that 'Triple Crown' blackberry outperformed 'Chester Thornless' blackberry in both the high tunnel and field trials with significant difference in the second season. Additionally, blackberry yields from both cultivars were observed to be higher in the field than in the high tunnel for both years. High temperature damage to high tunnel berry canes was noticed for both cultivars, with observed yield decreases in the second year in the high tunnel. Overall, this study indicates that the phenology and climate needs of the two winter greens and blackberry cultivars were not compatible for sustaining year-round organic high tunnel production.
机译:全球可用农田的减少促使对多培育系统的兴趣,如间作,其中两种或更多种作物同时生长在同一块土地上以增加每个农场地区的产量。在Alcalde,NM,一系列圆形的间作系统旨在在2年期间在高隧道中有机生产的黑莓品种(葡萄酒,亚本毒品)和冬季蔬菜。两种佛罗里达州的果实黑莓品种,切斯特刺和三冠,以“红色的俄罗斯”羽衣甘蓝(芸苔窝)和'Bloomsdale's Spinach(Spinacia Oleracea)在高隧道中生长。在相邻的领域中,没有冬季间和没有高隧道重复黑莓种植。将在7月至9月收获的黑莓栽培品种,测量新的重量以确定高隧道中的间作系统的适用性。两种冬季蔬菜都收获1月至4月,并测量新鲜的产量重量,以辨别适合该系统的跨性间。行盖被用于羽衣甘蓝和菠菜,11月至4月在高隧道内监测空气温度。高隧道温度是在使用罗布韦杂交的可接受范围内的可接受的范围内。本研究的产量数据表明,“三冠”黑莓在高隧道和田间试验中表现出'切斯特猎人'黑莓,第二季的显着差异。另外,观察到来自两个品种的黑莓产量比在高隧道中较高。对高隧道浆果孔的高温损坏被注意到两种品种,在高隧道中观察到的产量下降。总体而言,这项研究表明,两种冬季蔬菜和黑莓品种的候选和气候需求对于维持全年的有机高隧道生产并不兼容。

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